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October 9, 20250 citationsOpen Access

Chronology of our Galaxy from Gaia colour-magnitude diagram fitting (ChronoGal): IV. On the inner Milky Way stellar age distribution

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TRT. Ruiz-LaraDMDavid MirabalCGCarme Gallart

Key Points

  • The study reveals that the stellar age distribution in the inner Milky Way shows episodic star formation events over the last 13.5 billion years, indicating complex formation history.
  • Precise age distributions of super metal-rich stars in the solar neighborhood suggest these stars originated in the inner Galaxy, providing insights into star formation processes.
  • Using Gaia Colour-Magnitude Diagram fitting, the research identifies distinct star formation events coinciding with major galactic mergers and encounters that shaped the Milky Way.
  • The results propose that the Gaia-Enceladus-Sausage merger influenced the formation of the Milky Way bar, but the 4 Gyr event lacks a clear accretion counterpart.

Abstract

The Milky Way's inner region is dominated by a stellar bar and a boxy-peanut shaped bulge. However, which stellar populations inhabit the inner Galaxy or how star formation proceeded there is still unknown. The difficulty in studying these stars stems from their location in dense regions that are strongly impacted by extinction and crowding effects. In this work, we use star formation histories computed in the solar neighbourhood using Gaia Colour-Magnitude Diagram fitting to shed light onto the evolution of the central regions of our Galaxy. For that, we have obtained precise age distributions for the non-negligible amount of super metal-rich stars (M/H 0. 5) in the solar neighbourhood (more than 5\% of the total stars within 400 pc of the plane). Assuming that these stars were born in the inner Galaxy and migrated outwards, those distributions should be indicative of the true stellar age distribution in the inner Galaxy. Surprisingly, we find that these age distributions are not continuous but show clear signs of episodic star formation (~13. 5, 10. 0, 7. 0, 4. 0, 2. 0 and less than 1~Gyr ago). Interestingly, with the exception of the 4~Gyr event, the timings of the detected events coincide with the formation of the primitive Milky Way and with known merging events or satellite encounters (Gaia-Enceladus-Sausage, Sagittarius dwarf galaxy, and the Magellanic Clouds), suggesting that these could have induced enhanced and global star-forming episodes. These results are compatible with a scenario in which Gaia-Enceladus-Sausage is responsible for the formation of the bar 10 Gyr ago. However, we cannot associate any accretion counterpart with the 4-Gyr-ago event, leaving room for a late formation of the bar, as previously proposed. A qualitative comparison with the Auriga Superstars simulations suggesting a possible link to bar dynamics and satellite accretion. Abridged

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Cite This Study

Ruiz-Lara et al. (2025) studied this question.

synapsesocial.com/papers/68e7ba40ccde5f1021f64c74https://doi.org/10.48550/arxiv.2510.02238
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